Neurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and what determines their form and dimensions? To answer these questions, I consider the wiring up of a large highly interconnected neuronal network, such as the cortical column. Implementation of such a network in the allotted volume requires all the salient features of neuronal morphology: the existence of branching dendrites and axons and the presence of dendritic spines. Therefore, the requirement of high interconnectivity is, in itself, sufficient to account for the existence of these features. Moreover, the actual lengths of axons and dendrites are close to the smallest possible length for a given interconnectivity, arguing that high interconnectivi...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Synaptic clustering on dendritic branches enhances plasticity, input integration and neuronal firing...
Neuronal signal integration and information processing in cortical networks critically depend on the...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
It has become increasingly clear that the neurons in the cerebral cortex are not randomly interconne...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Synaptic connectivity between neurons is naturally constrained by the anatomical overlap of neuronal...
The connectivity of cortical microcircuits is a major determinant of brain function; defining how ac...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Synaptic clustering on dendritic branches enhances plasticity, input integration and neuronal firing...
Neuronal signal integration and information processing in cortical networks critically depend on the...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
AbstractNeurons often possess elaborate axonal and dendritic arbors. Why do these arbors exist and w...
It has become increasingly clear that the neurons in the cerebral cortex are not randomly interconne...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Synaptic connectivity between neurons is naturally constrained by the anatomical overlap of neuronal...
The connectivity of cortical microcircuits is a major determinant of brain function; defining how ac...
The neurons in the cerebral cortex are not randomly interconnected. This specificity in wiring can r...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Much is known about the computation in individual neurons in the cortical column. Also, the selectiv...
Neuronal signal integration and information processing in cortical networks critically depend on the...
Synaptic clustering on dendritic branches enhances plasticity, input integration and neuronal firing...
Neuronal signal integration and information processing in cortical networks critically depend on the...